4.7 Article

Detection of low-metallicity warm plasma in a galaxy overdensity environment at z ∼ 0.2

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 475, Issue 3, Pages 3529-3542

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/sty042

Keywords

galaxies: clusters: general; galaxies: groups: general; galaxies: haloes; intergalactic medium; ultraviolet: general

Funding

  1. Department of Space, Government of India
  2. HST program by NASA through STScI [GO-14588, NAS5-26555]
  3. NASA

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We present results from the analysis of a multiphase O VI-broad Ly alpha (BLA) absorber at z = 0.19236 in the HubbleSpaceTelescope/Cosmic Origins Spectrograph spectrum of PG 1121 + 422. The low and intermediate ionization metal lines in this absorber have a single narrow component, whereas the Ly alpha has a possible broad component with b(H-I) similar to 71 km s(-1). Ionization models favour the low and intermediate ions coming from a T similar to 8500 K, moderately dense (n(H) similar to 10(-3) cm(-3)) photoionized gas with near solar metallicities. The weak O VI requires a separate gas phase that is collisionally ionized. The O VI coupled with BLA suggests T similar to 3.2 x 10(5) K, with significantly lower metal abundance and similar to 1.8 orders of magnitude higher total hydrogen column density compared to the photoionized phase. Sloan Digitial Sky Survey (SDSS) shows 12 luminous (> L*) galaxies in the rho <= 5 Mpc, vertical bar Delta v vertical bar <= 800 km s(-1) region surrounding the absorber, with the absorber outside the virial bounds of the nearest galaxy. The warm phase of this absorber is consistent with being transition temperature plasma either at the interface regions between the hot intragroup gas and cooler photoionized clouds within the group, or associated with high velocity gas in the halo of a less than or similar to L* galaxy. The absorber highlights the advantage of O VI-BLA absorbers as ionization model independent probes of warm baryon reserves.

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